The chromophore binding properties of the higher plant light-harvesting complex II have been studied by site-directed mutagenesis of pigment-binding residues. Mutant apoproteins were overexpressed in Escherichia coli and then refolded in vitro with purified chromophores to yield holoproteins selectively affected in chlorophyll-binding sites. Biochemical and spectroscopic characterization showed a specific loss of pigments and absorption spectral forms for each mutant, thus allowing identification of the chromophores bound to most of the binding sites. On these bases a map for the occupancy of individual sites by chlorophyll a and chlorophyll b is proposed. In some cases a single mutation led to the loss of more than one chromophore indicati...
The major light-harvesting complex (LHCIIb) of photosystem H can be reconstituted in vitro from its ...
Mutant proteins from light-harvesting complexes of higher plants may be obtained by expressing modif...
The spectroscopic properties and energy transfer dynamics of the protein-bound chlorophylls and xant...
The chromophore binding properties of the higher plant light-harvesting complex II have been studied...
The chromophore binding properties of the higher plant light-harvesting complex II have been studied...
The chromophore binding properties of the higher plant light-harvesting complex II have been studied...
The chromophore-binding properties of the higher plant light-harvesting protein CP29 have been studi...
Mutation analysis of higher plants light harvesting proteins has been prevented for a long time by t...
The chromophore-binding properties of the higher plant light-harvesting protein CP29 have been studi...
Mutation analysis of higher plants light harvesting proteins has been prevented for a long time by t...
Mutation analysis of higher plants light harvesting proteins has been prevented for a long time by t...
Mutation analysis of higher plants light harvesting proteins has been prevented for a long time by t...
AbstractMutation analysis of higher plants light harvesting proteins has been prevented for a long t...
The major light-harvesting complex (LHCIIb) of photosystem II can be reconstituted in vitro from its...
Light-harvesting chlorophyll-a/b-binding protein (LHCP), overexpressed in Escherichia coli, can be r...
The major light-harvesting complex (LHCIIb) of photosystem H can be reconstituted in vitro from its ...
Mutant proteins from light-harvesting complexes of higher plants may be obtained by expressing modif...
The spectroscopic properties and energy transfer dynamics of the protein-bound chlorophylls and xant...
The chromophore binding properties of the higher plant light-harvesting complex II have been studied...
The chromophore binding properties of the higher plant light-harvesting complex II have been studied...
The chromophore binding properties of the higher plant light-harvesting complex II have been studied...
The chromophore-binding properties of the higher plant light-harvesting protein CP29 have been studi...
Mutation analysis of higher plants light harvesting proteins has been prevented for a long time by t...
The chromophore-binding properties of the higher plant light-harvesting protein CP29 have been studi...
Mutation analysis of higher plants light harvesting proteins has been prevented for a long time by t...
Mutation analysis of higher plants light harvesting proteins has been prevented for a long time by t...
Mutation analysis of higher plants light harvesting proteins has been prevented for a long time by t...
AbstractMutation analysis of higher plants light harvesting proteins has been prevented for a long t...
The major light-harvesting complex (LHCIIb) of photosystem II can be reconstituted in vitro from its...
Light-harvesting chlorophyll-a/b-binding protein (LHCP), overexpressed in Escherichia coli, can be r...
The major light-harvesting complex (LHCIIb) of photosystem H can be reconstituted in vitro from its ...
Mutant proteins from light-harvesting complexes of higher plants may be obtained by expressing modif...
The spectroscopic properties and energy transfer dynamics of the protein-bound chlorophylls and xant...